首页> 外文期刊>American Journal of Physiology >Rate-dependent activation failure in isolated cardiac cells and tissue due to channel block
【24h】

Rate-dependent activation failure in isolated cardiac cells and tissue due to channel block

机译:由于通道块,孤立的心脏细胞和组织中的速率依赖激活失败

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

While it is well established that class-I antiarrhythmics block cardiac sodium channels, the mechanism of action of therapeutic levels of these drugs is not well understood. Using a combination of mathematical modeling and in vitro experiments, we studied the failure of activation of action potentials in single ventricular cells and in tissue caused by Na+ channel block. Our computations of block and unblock of sodium channels by a theoretical class-Ib antiarrhythmic agent predict differences in the concentrations required to cause activation failure in single cells as opposed to multicellular preparations. We tested and confirmed these in silico predictions with in vitro experiments on isolated guinea-pig ventricular cells and papillary muscles stimulated at various rates (2-6.67 Hz) and exposed to various concentrations (5 X 10"6 to 500 X 10"6 mol/1) of lidocaine. The most salient result was that whereas large doses (5 X 10~4 mol/1 or higher) of lidocaine were required to inhibit action potentials temporarily in single cells, much lower doses (5 X 10~6 mol/1), i.e., therapeutic levels, were sufficient to have the same effect in papillary muscles: a hundredfold difference. Our experimental results and mathematical analysis indicate that the syncytial nature of cardiac tissue explains the effects of clinically relevant doses of Na+ channel blockers.
机译:虽然很好地确定了类抗心律失常阻滞心脏钠通道,但这些药物的治疗水平的作用机制尚不清楚。使用数学建模和体外实验的组合,我们研究了单个心室细胞和Na +通道块引起的组织中动作电位的激活失败。我们通过理论级-IB抗真瘤剂的嵌段和解锁钠通道的计算预测单个电池中引起激活失效所需的浓度的差异,而不是多细胞制剂。我们在硅预测中测试并证实了这些与分离的豚鼠心室细胞和乳头状肌肉以各种速率(2-6.67Hz)刺激的乳头肌肉进行了测试,并暴露于各种浓度(5×10“6至500×10”6摩尔/ 1)利多卡因。最大的结果是,虽然需要大剂量(5×10〜4mol / 1或更高)的利多卡因,以暂时抑制单细胞中的动作电位,低剂量(5×10〜6 mol / 1),即治疗水平足以在乳头状肌肉中具有相同的效果:百倍差异。我们的实验结果和数学分析表明,心脏组织的合胞性质解释了临床相关剂量的Na +通道阻滞剂的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号